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Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway

Microangiopathy may worsen the clinical outcome of Chagas disease. Given the obstacles to investigating the dynamics of inflammation and angiogenesis in heart tissues parasitized by Trypanosoma cruzi, here we used intravital microscopy (IVM) to investigate microcirculatory alterations in the hamster...

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Autores principales: Vellasco, Lucas, Svensjö, Erik, Bulant, Carlos Alberto, Blanco, Pablo Javier, Nogueira, Fábio, Domont, Gilberto, de Almeida, Natália Pinto, Nascimento, Clarissa Rodrigues, Silva-dos-Santos, Danielle, Carvalho-Pinto, Carla Eponina, Medei, Emiliano Horácio, Almeida, Igor C., Scharfstein, Julio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878313/
https://www.ncbi.nlm.nih.gov/pubmed/35215131
http://dx.doi.org/10.3390/pathogens11020187
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author Vellasco, Lucas
Svensjö, Erik
Bulant, Carlos Alberto
Blanco, Pablo Javier
Nogueira, Fábio
Domont, Gilberto
de Almeida, Natália Pinto
Nascimento, Clarissa Rodrigues
Silva-dos-Santos, Danielle
Carvalho-Pinto, Carla Eponina
Medei, Emiliano Horácio
Almeida, Igor C.
Scharfstein, Julio
author_facet Vellasco, Lucas
Svensjö, Erik
Bulant, Carlos Alberto
Blanco, Pablo Javier
Nogueira, Fábio
Domont, Gilberto
de Almeida, Natália Pinto
Nascimento, Clarissa Rodrigues
Silva-dos-Santos, Danielle
Carvalho-Pinto, Carla Eponina
Medei, Emiliano Horácio
Almeida, Igor C.
Scharfstein, Julio
author_sort Vellasco, Lucas
collection PubMed
description Microangiopathy may worsen the clinical outcome of Chagas disease. Given the obstacles to investigating the dynamics of inflammation and angiogenesis in heart tissues parasitized by Trypanosoma cruzi, here we used intravital microscopy (IVM) to investigate microcirculatory alterations in the hamster cheek pouch (HCP) infected by green fluorescent protein-expressing T. cruzi (GFP-T. cruzi). IVM performed 3 days post-infection (3 dpi) consistently showed increased baseline levels of plasma extravasation. Illustrating the reciprocal benefits that microvascular leakage brings to the host-parasite relationship, these findings suggest that intracellular amastigotes, acting from inside out, stimulate angiogenesis while enhancing the delivery of plasma-borne nutrients and prosurvival factors to the infection foci. Using a computer-based analysis of images (3 dpi), we found that proangiogenic indexes were positively correlated with transcriptional levels of proinflammatory cytokines (pro-IL1β and IFN-γ). Intracellular GFP-parasites were targeted by delaying for 24 h the oral administration of the trypanocidal drug benznidazole. A classification algorithm showed that benznidazole (>24 h) blunted angiogenesis (7 dpi) in the HCP. Unbiased proteomics (3 dpi) combined to pharmacological targeting of chymase with two inhibitors (chymostatin and TY-51469) linked T. cruzi-induced neovascularization (7 dpi) to the proangiogenic activity of chymase, a serine protease stored in secretory granules from mast cells.
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spelling pubmed-88783132022-02-26 Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway Vellasco, Lucas Svensjö, Erik Bulant, Carlos Alberto Blanco, Pablo Javier Nogueira, Fábio Domont, Gilberto de Almeida, Natália Pinto Nascimento, Clarissa Rodrigues Silva-dos-Santos, Danielle Carvalho-Pinto, Carla Eponina Medei, Emiliano Horácio Almeida, Igor C. Scharfstein, Julio Pathogens Article Microangiopathy may worsen the clinical outcome of Chagas disease. Given the obstacles to investigating the dynamics of inflammation and angiogenesis in heart tissues parasitized by Trypanosoma cruzi, here we used intravital microscopy (IVM) to investigate microcirculatory alterations in the hamster cheek pouch (HCP) infected by green fluorescent protein-expressing T. cruzi (GFP-T. cruzi). IVM performed 3 days post-infection (3 dpi) consistently showed increased baseline levels of plasma extravasation. Illustrating the reciprocal benefits that microvascular leakage brings to the host-parasite relationship, these findings suggest that intracellular amastigotes, acting from inside out, stimulate angiogenesis while enhancing the delivery of plasma-borne nutrients and prosurvival factors to the infection foci. Using a computer-based analysis of images (3 dpi), we found that proangiogenic indexes were positively correlated with transcriptional levels of proinflammatory cytokines (pro-IL1β and IFN-γ). Intracellular GFP-parasites were targeted by delaying for 24 h the oral administration of the trypanocidal drug benznidazole. A classification algorithm showed that benznidazole (>24 h) blunted angiogenesis (7 dpi) in the HCP. Unbiased proteomics (3 dpi) combined to pharmacological targeting of chymase with two inhibitors (chymostatin and TY-51469) linked T. cruzi-induced neovascularization (7 dpi) to the proangiogenic activity of chymase, a serine protease stored in secretory granules from mast cells. MDPI 2022-01-29 /pmc/articles/PMC8878313/ /pubmed/35215131 http://dx.doi.org/10.3390/pathogens11020187 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vellasco, Lucas
Svensjö, Erik
Bulant, Carlos Alberto
Blanco, Pablo Javier
Nogueira, Fábio
Domont, Gilberto
de Almeida, Natália Pinto
Nascimento, Clarissa Rodrigues
Silva-dos-Santos, Danielle
Carvalho-Pinto, Carla Eponina
Medei, Emiliano Horácio
Almeida, Igor C.
Scharfstein, Julio
Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title_full Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title_fullStr Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title_full_unstemmed Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title_short Sheltered in Stromal Tissue Cells, Trypanosoma cruzi Orchestrates Inflammatory Neovascularization via Activation of the Mast Cell Chymase Pathway
title_sort sheltered in stromal tissue cells, trypanosoma cruzi orchestrates inflammatory neovascularization via activation of the mast cell chymase pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8878313/
https://www.ncbi.nlm.nih.gov/pubmed/35215131
http://dx.doi.org/10.3390/pathogens11020187
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